師資
教育背景:
2011-2016 博士 機(jī)械工程 香港科技大學(xué)
2007-2011 理學(xué)學(xué)士 理論與應(yīng)用力學(xué) 北京大學(xué)
研究方向:
稀薄氣體:
? 稀薄氣體的多尺度模擬:分子動(dòng)力學(xué)、DSMC、漸進(jìn)理論與攝動(dòng)方法
? 氣體-固體邊界的作用模型及其應(yīng)用
? 多尺度計(jì)算中的耦合方法的發(fā)展與應(yīng)用
? 流體輸運(yùn)中的多物理過(guò)程模擬,如相變、化學(xué)反應(yīng)
微納尺度下的聲子輸運(yùn):
? 聲子輸運(yùn)的多尺度模擬:原子到介觀尺度
? 納米結(jié)構(gòu)材料中聲子輸運(yùn)的模擬與物理機(jī)理:2D材料、無(wú)定型材料、無(wú)序結(jié)構(gòu)材料、導(dǎo)熱超材料
研究工作經(jīng)歷:
2017.07 – 2018.09: 博士后
力學(xué)與航空航天工程系,香港科技大學(xué)
2016.03 – 2017.06: 副研究員
力學(xué)與航空航天工程系,香港科技大學(xué)
教學(xué)工作經(jīng)歷:
2018.10 – 2018.12: 兼職講師 工學(xué)院,香港科技大學(xué)
發(fā)表文章:
期刊文章:
[J1] T. Liang, Q. Li. " Accurate modeling of Knudsen diffusion in nanopores using a physical-based boundary model", Journal of applied physics, 126, 084304, 2019.
[J2] J. Yu, Q. Li, and W. Ye, “Investigation of wave interference effect in Si/Ge superlattices with interfering Monte Carlo method”. International Journal of Heat and Mass Transfer, 128: 270-278, 2018
[J3] T. Liang, Q. Li, and W. Ye. “A physical-based gas–surface interaction model for rarefied gas flow simulation”. Journal of Computational Physics, 352: 105-122, 2018.
[J4] Q. Li, and W. Ye. "An interfering Monte Carlo method for partially coherent phonon transport in superlattices". International Journal of Heat and Mass Transfer, 107: 534-543, 2017.
[J5] Q. Li, T. Liang, and W. Ye, "Knudsen torque: A rotational mechanism driven by thermal force". Physical Review E, 90(3): 033009, 2014.
[J6] Q. Li, T. Liang, and W. Ye. "Shape-dependent orientation of thermophoretic forces in microsystems". Physical Review E, 88(3): 033020, 2013.
[J7] T. Liang, Q. Li, and W. Ye. "Performance evaluation of Maxwell and Cercignani-Lampis gas-wall interaction models in the modeling of thermally driven rarefied gas transport". Physical Review E, 88(1): 013009, 2013.
會(huì)議文章:
[C1] Q. Li, T. Liang, and W. Ye. "Knudsen torque on heated micro beams." Proceedings of the 29th International Symposium on Rarefied Gas Dynamics. vol. 1628, pp. 705-711, 2014.
[C2] T. Liang, Q. Li, and W. Ye. "On the Maxwell gas-wall interaction model for micro/nano gas flows." Proceedings of the 28th International Symposium on Rarefied Gas Dynamics. vol. 1501, No. 1, pp. 1175-1181, 2012.